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The [M6(S2C2Ph2)6] (M = Ni, Pd, Pt) Series: Multielectron Reservoirs That Sustain Ligand-Based Oxidations and
Titir Das Gupta1, Brian Wuille Bille2, Olaf Ruediger2
1Department of Chemistry, Tulane University, 6400 Freret Street, New Orleans, Louisiana 70118, United States.
Abstract:
A complete [M6(S2C2R2)6] series (M = Ni (1), Pd (2), Pt (3); R = Ph), the rarest variety among homoleptic dithiolene transition-metal compounds, has been prepared by reaction between [M(S2C2Ph2)2] and a M0 source. The platinum member of this set is the first of its type. Diffraction-quality crystals, grown with high reproducibility by evaporation from PhNO2 solutions, reveal fully reduced [Ph2C2S2]2- dianions and an octahedral M6 core that is reduced to C2 symmetry by the fusion of a mononuclear D2h [M(S2C2Ph2)2] fragment upon a C4-symmetric base. The [Ni6(S2C2Ph2)2]1- monoanion, prepared by Cp*2Co reduction, shows only modest structural differences from its neutral counterpart. In CH2Cl2, 1 and 2 can undergo two reductions and an oxidation, while 3 sustains two reductions and two oxidations. In benzonitrile, 1 sustains three reversible oxidations at potentials that are shifted appreciably to less positive values. The cathodic processes are shown by density functional theory (DFT) calculations to involve an MO largely of metal-sulfur composition that has contributions throughout the C4-symmetric pentametallic base of the assembly, while the oxidations are largely ligand-based and confined to the monometallic [M(S2C2Ph2)2] cap. The absorption spectra are marked by multiple overlapping bands that produce a continuous, tapering absorption profile of unresolved shoulders and swells.
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